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PMID: 3735159 Published · ppublish English Journal Article Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Neural coding of difference frequencies in the midbrain of the electric fish Eigenmannia: reading the sense of rotation in an amplitude-phase plane.

Journal of comparative physiology. A, Sensory, neural, and behavioral physiology ·Vol. 158 ·No. 5 ·1986-05-00 ·Pages 613-24

Rose G, Heiligenberg W

Abstract

Eigenmannia is able to discriminate the sign of the difference, Df, between the frequency of a neighbor's electric organ discharge (EOD) and that of its own EOD. This discrimination can be demonstrated at the level of individual neurons of the midbrain. Intracellular and extracellular recordings of such sign-selective cells revealed the following: Units preferring positive Dfs and units preferring negative Dfs were found with equal frequency. The degree of selectivity was also similar for these two classes of neurons. All sign-selective units were sensitive to the magnitude of the frequency difference, i.e. the beat rate. Most units responded best to beat rates in the 4-8 Hz range. Sign-selectivity was observed only when the jamming signal (S2) was presented through electrodes other than those used to deliver the mimic (S1) of the fish's EOD, i.e. only when amplitude modulations were accompanied by modulations of differential phase. Intracellular studies suggest that most sign-selective neurons of the tectum are large, multipolar cells in the stratum album centrale. These cells send projections to the reticular formation, to lamina 9 of the torus semicircularis and to the N. electrosensorius.

MeSH Terms
Animals Electric Organ/physiology Electric Stimulation Fishes Mesencephalon/physiology Neurons/physiology Superior Colliculi/physiology
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Rose G
Heiligenberg W
References (14)
14 references, click to expand
  1. Gain control in the electrosensory system mediated by descending inputs to the electrosensory lateral line lobe.
    J Neurosci. 1986 Feb;6(2):553-62 PMID: 3950710
  2. Temporal hyperacuity in the electric sense of fish.
    Nature. 1985 Nov 14-20;318(6042):178-80 PMID: 4058594
  3. The cytology of the posterior lateral line lobe of high-frequency weakly electric fish (Gymnotidae): dendritic differentiation and synaptic specificity in a simple cortex.
    J Comp Neurol. 1981 Jan 1;195(1):87-139 PMID: 7204653
  4. The nucleus praeeminentialis: a Golgi study of a feedback center in the electrosensory system of gymnotid fish.
    J Comp Neurol. 1983 Dec 1;221(2):127-44 PMID: 6655077
  5. Neural correlates of a nonjammable electrolocation system.
    Science. 1981 Feb 13;211(4483):722-5 PMID: 7455709
  6. Structure and function of electrosensory neurons in the torus semicircularis of Eigenmannia: morphological correlates of phase and amplitude sensitivity.
    J Neurosci. 1985 Aug;5(8):2269-80 PMID: 4020437
  7. Phase and amplitude computations in the midbrain of an electric fish: intracellular studies of neurons participating in the jamming avoidance response of Eigenmannia.
    J Neurosci. 1985 Feb;5(2):515-31 PMID: 3973680
  8. Laminar organization of the afferent and efferent systems of the torus semicircularis of gymnotiform fish: morphological substrates for parallel processing in the electrosensory system.
    J Comp Neurol. 1981 Dec 20;203(4):649-70 PMID: 7035506
  9. Phase-sensitive midbrain neurons in Eigenmannia: neural correlates of the jamming avoidance response.
    Science. 1980 Aug 15;209(4458):828-31 PMID: 7403849
  10. Sensitivity to amplitude modulated sounds in the anuran auditory nervous system.
    J Neurophysiol. 1985 Feb;53(2):446-65 PMID: 3872351
  11. A time-comparison circuit in the electric fish midbrain. I. Behavior and physiology.
    J Neurosci. 1986 Jan;6(1):107-19 PMID: 3944612
  12. Temporal selectivity in the central auditory system of the leopard frog.
    Science. 1983 Mar 4;219(4588):1087-9 PMID: 6600522
  13. Neuronal analysis of wave form in the time domain: midbrain units in electric fish during social behavior.
    Science. 1974 Jul 26;185(4148):365-7 PMID: 4834368
  14. Gain control in the electrosensory system: a role for the descending projections to the electrosensory lateral line lobe.
    J Comp Physiol A. 1986 Apr;158(4):505-15 PMID: 3014129
Article Info
Journal
Journal of comparative physiology. A, Sensory, neural, and behavioral physiology
Abbr.
J Comp Physiol A
Published
1986-05-00
Pages
613-24
Language
English
Region
Germany
NLM ID
8413199
Subset
IM
Grants
NINDS NIH HHS · NS 07261-02 · United States
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